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Polymer Interphase Self-Reinforcement and Strengthening Mechanisms in Low-Loaded Nanocomposite Fibers

机译:低载荷纳米复合纤维的聚合物相间自增强和增强机理

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摘要

The effect of filler concentration on understanding structure-property relationships in polymer composites with low nanocarbon (nC) loadings (<1 wt%) is investigated. The presence of the carbon nanochips (CNC) filler induces the formation of highly ordered self-reinforcing interphase regions within the composite fibers. The influence of these regions on the structure and properties of the fibers is analyzed by both theoretical and experimental methods. Analysis of the filled polyvinyl alcohol (PVA) fibers demonstrates that the presence of the nC influences the organization and formation of crystalline and amorphous polymer lamellae stacking in the fibers, leading to variations in grain structure for the composites. These structural developments contribute specifically to the property increases (i.e., elastic modulus increased by 222% and tensile strength increased by 186%) for the PVA/CNC composites in comparison to control PVA fibers.
机译:研究了填料浓度对了解低纳米碳(nC)含量(<1 wt%)的聚合物复合材料中结构与性能之间关系的影响。碳纳米芯片(CNC)填料的存在会诱导在复合纤维内形成高度有序的自增强相间区域。通过理论和实验方法分析了这些区域对纤维结构和性能的影响。对填充的聚乙烯醇(PVA)纤维的分析表明,nC的存在会影响纤维中堆积的晶体和无定形聚合物薄片的组织和形成,从而导致复合材料的晶粒结构发生变化。与对照PVA纤维相比,这些结构发展特别有助于PVA / CNC复合材料的性能提高(即,弹性模量提高222%,拉伸强度提高186%)。

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